A design method of dual cold sparing system of attitude and orbit control computer

Xu Liang, Quan Wei, Xu Fan
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Abstract

The attitude and orbit control computer system bears in orbit attitude control, orbit control and other tasks. It is one of the most important and most complex systems in the satellite, and is also easiest to conk in all systems. This paper presents a dual cold sparing system of attitude and orbit control computer, which includes the dual switch control module, the dual power management module, the CPU module, and the watchdog module; The architecture of CPU module is “ARM + FPGA”, and the TMR voting module of FPGA vote for the signal in SRAM to correct error, which improves the reliability of the running program in ARM. In normal mode, the backup CPU module is in the state without power, and the dual switch control module detects fault of the host CPU module. When the host CPU module is detected that irreversible fault occurs, the dual power management module switch the power of the host CPU module and the backup CPU module. At the same time, the on-site information when the host CPU module is running and the interrelated parameters of application program, real-time saved by the dual communication RAM module, are used by the backup CPU module to achieve inheritance of control process.
姿态与轨道控制计算机双冷保系统的设计方法
姿态与轨道控制计算机系统承担着轨道姿态控制、轨道控制等任务。它是卫星系统中最重要、最复杂的系统之一,也是所有系统中最容易理解的。提出了一种姿态与轨道控制计算机双冷保系统,该系统包括双开关控制模块、双电源管理模块、CPU模块和看门狗模块;CPU模块采用“ARM + FPGA”架构,FPGA的TMR投票模块对SRAM中的信号进行投票纠错,提高了程序在ARM中运行的可靠性。在正常模式下,备用CPU处于未上电状态,双交换控制模块检测到主机CPU故障。当检测到主机CPU模块发生不可逆故障时,双电源管理模块将主机CPU模块与备用CPU模块进行电源切换。同时,备用CPU模块利用双通信RAM模块实时保存的主机CPU模块运行时的现场信息和应用程序的相关参数,实现控制过程的继承。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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